Quantum Interference by Vortex Supercurrents

Author:

Papari Gian Paolo123ORCID,Fomin Vladimir M.45ORCID

Affiliation:

1. Dipartimento di Fisica Università di Napoli “Federico II,” via Cinthia I-80126 Napoli Italy

2. CNR-SPIN UOS Napoli via Cinthia I-80126 Napoli Italy

3. Istituto Nazionale di Fisica Nucleare (INFN), Naples Unit via Cinthia I-80126 Napoli Italy

4. Institute for Emerging Electronic Technologies Leibniz IFW Dresden Helmholtzstraße 20 D-01069 Dresden Germany

5. Laboratory of Physics and Engineering of Nanomaterials Department of Theoretical Physics Moldova State University str. Alexei Mateevici 60 MD-2009 Chişinău Republic of Moldova

Abstract

The origin of the parabolic background of magnetoresistance oscillations measured in finite‐width superconducting mesoscopic rings with input and output stubs and in patterned films is analyzed. The transmission model explaining the sinusoidal oscillation of magnetoresistance is extended to address the parabolic background as a function of the magnetic field. Apart from the interference mechanism activated by the ring, pinned superconducting vortices as topological defects introduce a further interference‐based distribution of supercurrents that affects, in turn, the voltmeter‐sensed quasiparticles. The onset of vortices changes the topology of the superconducting state in a mesoscopic ring in such a way that the full magnetoresistance dynamics can be interpreted due to the interference of the constituents of the order parameter induced by both the ring with its doubly connected topology and the vortex lattice in it.

Funder

European Cooperation in Science and Technology

Publisher

Wiley

Subject

Condensed Matter Physics,General Materials Science

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